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Glyphosate affects micro-organisms in rhizospheres of glyphosate-resistant soybeans

机译:草甘膦影响抗草甘膦大豆根际中的微生物

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Aims:Glyphosate-resistant (GR) soybean production increases each year because of the efficacy of glyphosate for weed management. A new or 'second' generation of GR soybean (GR2) is now commercially available for farmers that is being promoted as higher yielding relative to the previous, 'first generation' (GR1) cultivars. Recent reports show that glyphosate affects the biology and ecology of rhizosphere micro-organisms in GR soybean that affect yield. The objective of this research was to evaluate the microbiological interactions in the rhizospheres of GR2 and GR1 soybean and the performance of the cultivars with different rates of glyphosate applied at different growth stages.Methods and Results:A greenhouse study was conducted using GR1 and GR2 soybean cultivars grown in a silt loam soil. Glyphosate was applied at V2, V4 and V6 growth stages at three rates. Plants harvested at R1 growth stage had high root colonization by Fusarium spp.; reduced rhizosphere fluorescent pseudomonads, Mn-reducing bacteria, and indoleacetic acid-producing rhizobacteria; and reduced shoot and root biomass.Conclusions:Glyphosate applied to GR soybean, regardless of cultivar, negatively impacts the complex interactions of microbial groups, biochemical activity and root growth that can have subsequent detrimental effects on plant growth and productivity.Significance and Impact of the Study:The information presented here will be crucial in developing strategies to overcome the potential detrimental effects of glyphosate in GR cropping systems.
机译:目的:抗草甘膦(GR)大豆的产量每年增加,这是因为草甘膦在杂草处理方面的功效。现在,向农民出售的是新的或“第二”代遗传育种大豆(GR2),相对于以前的“第一代”(GR1)育种而言,正被推广为更高的单产。最近的报道表明,草甘膦会影响GR大豆中根际微生物的生物学和生态,从而影响产量。本研究的目的是评估GR2和GR1大豆在根际的微生物相互作用以及在不同的生育阶段施用不同草甘膦比例的品种的性能。方法和结果:使用GR1和GR2大豆进行了温室研究在粉壤土上生长的品种。草甘膦在V2,V4和V6生长阶段以三种速率施用。在R1生长期收获的植物被镰刀菌(Fusarium spp。)高根定植。减少了根际荧光假单胞菌,减少Mn的细菌和产生吲哚乙酸的根际细菌;结论:草甘膦应用于GR大豆,无论品种如何,都会对微生物群体,生化活性和根系生长的复杂相互作用产生负面影响,从而可能对植物的生长和生产力产生不利影响。研究:此处提供的信息对于制定策略以克服草甘膦在GR种植系统中的潜在有害影响至关重要。

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